Find research datasets worth reusing
Search datasets from major research repositories and use ShareScore to quickly assess how well each record supports discovery, access, and reuse.
2,455
datasets available to search
ShareScore release 0.7.1
Dataset results
2,455 results for “nomenclature”
Fig. 11 in Toward a terrestrial biogeographical regionalisation of the world: historical notes, characterisation and area nomenclature
Fig. 11. Biogeographic regionalisation of Rapoport (1968) recognising the Holarctic, Holotropical and Holantarctic belts.
Fig. 10 in Toward a terrestrial biogeographical regionalisation of the world: historical notes, characterisation and area nomenclature
Fig. 10. Simplified diagram of the main conventional zoogeographical subdivisions (Poynton 1959, fig. 1). The Palaearctic and Nearctic are treated as subregions within a larger Holarctic region.
Fig. 4 in Toward a terrestrial biogeographical regionalisation of the world: historical notes, characterisation and area nomenclature
Fig. 4. Zoogeographical areas illustrating the Distributions of Birds by R. Bowlder Sharpe (1893). The classification is loyal to Wallace (1876a, 1876b) because it clearly distinguishes the Nearctic from the Palaearctic.
FIGURE 7. Asplenium polyodon G.Forst. R. Schodde 316 in Taxonomic and nomenclatural notes on Philippine ferns. IV. Asplenium pahli (Polypodiales, Aspleniineae, Aspleniaceae), a new species from Leyte, Philippines
FIGURE 7. Asplenium polyodon G.Forst. R. Schodde 316 (BM). Note pinna shape, serration and soral arrangement. Courtesy of the Herbarium, British Museum of Natural History, London, England. Photo by A.E. Salgado; not published.
FIGURE 6. Asplenium falcatum Lam. Hermann s.n in Taxonomic and nomenclatural notes on Philippine ferns. IV. Asplenium pahli (Polypodiales, Aspleniineae, Aspleniaceae), a new species from Leyte, Philippines
FIGURE 6. Asplenium falcatum Lam. Hermann s.n., BM000621974, Herb. Hermann 3: 47, no. 385 (BM). Note the pinna shape and basal acroscopic tooth, serration and soral arrangement. Courtesy of the Herbarium, British Museum of Natural History, London, England. License CC0-10. Specimen available at: https://plants.jstor.org/stable/10.5555/al.ap.specimen.bm000621974
FIGURE 3. Asplenium anisodontum C.Presl, Cuming 128 in Taxonomic and nomenclatural notes on Philippine ferns. IV. Asplenium pahli (Polypodiales, Aspleniineae, Aspleniaceae), a new species from Leyte, Philippines
FIGURE 3. Asplenium anisodontum C.Presl, Cuming 128, isotype (B). Courtesy of the Herbarium Berolinense, Berlin, Germany. Creative Commons Attribution-NonCommercial-ShareAlike 4.0 International Public License. Available at: http://herbarium.bgbm.org/ object/B200011341
FIGURE 4. Asplenium anisodontum C.Presl, Cuming 128 in Taxonomic and nomenclatural notes on Philippine ferns. IV. Asplenium pahli (Polypodiales, Aspleniineae, Aspleniaceae), a new species from Leyte, Philippines
FIGURE 4. Asplenium anisodontum C.Presl, Cuming 128 (B). Note the pinna shape, serration and soral arrangement. Courtesy of the Herbarium Berolinense, Berlin, Germany. Creative Commons Attribution-NonCommercial-ShareAlike 4.0 International Public License. Enlargement of a section by Salgado of the specimen available at: http://herbarium.bgbm.org/object/B200011341
FIGURE 5 in Taxonomic and nomenclatural notes on Philippine ferns. IV. Asplenium pahli (Polypodiales, Aspleniineae, Aspleniaceae), a new species from Leyte, Philippines
FIGURE 5. Asplenium pahli Salgado sp. nov., Wenzel 572, P00370340 (P). Note the serration of the pinna and the soral arrangement. License CC Attribution 4.0 International. Enlargement of a section by Salgado of the specimen available at: https://science.mnhn.fr/ institution/mnhn/collection/p/item/p00370340
FIGURE 1 in Taxonomic and nomenclatural notes on Philippine ferns. IV. Asplenium pahli (Polypodiales, Aspleniineae, Aspleniaceae), a new species from Leyte, Philippines
FIGURE 1. Letter of C.A. Wenzel to Sir David Prain, Director of the Royal Botanic Gardens, Kew. Wenzel proposes to collect for the Royal Botanic Garden in an unexplored area of central Leyte. Image reproduced with the kind permission of the Board of Trustees of the Royal Botanic Garden, Kew. Available at: https://plants.jstor.org/stable/10.5555/al.ap.visual.kdcas9949
FIGURE 2. Asplenium pahli Salgado, Wenzel 572 in Taxonomic and nomenclatural notes on Philippine ferns. IV. Asplenium pahli (Polypodiales, Aspleniineae, Aspleniaceae), a new species from Leyte, Philippines
FIGURE 2. Asplenium pahli Salgado, Wenzel 572, holotype (P). Note the plantlets near the apex of two fronds. Muséum national d'histoire naturelle, Paris, France. Collection: Vascular plants P00370339. License CC Attribution 4.0 International. Available at: https:// science.mnhn.fr/institution/mnhn/collection/p/item/p00370339
FIGURE 2. A in ZooNom: an online thesaurus for alleviating ambiguity in the terminology of zoological nomenclature
FIGURE 2. A screenshot of ZooNom taken on 10/11/2021. The concept shown is "doxisonym" (URL: https://www.loterre.fr/ skosmos/FM8/en/page/-PD692RFQ-4). The "note" field contains the etymology, and the "scope note" field presents the Code's equivalent (objective synonym) and definition.
FIGURE 3 in "Species imperfecte cognita"-enlightening Paepalanthus cordatus (Eriocaulaceae): nomenclatural and taxonomic notes on an endangered species from central Brazil
FIGURE 3. Geographic distribution map of Paepalanthus cordatus. Confirmed species records are represented by black dots and the estimated record is represented by a blue dot. The blue line represents the limits of the Chapada dos Veadeiros National Park.
FIGURE 2. Paepalanthus cordatus. A in "Species imperfecte cognita"-enlightening Paepalanthus cordatus (Eriocaulaceae): nomenclatural and taxonomic notes on an endangered species from central Brazil
FIGURE 2. Paepalanthus cordatus. A. Habitat in the Pouso Alto region, Alto Paraíso de Goiás (GO). B. Habitat in the Vereda do Mulungu region, Alto Paraíso de Goiás (GO). C. Habit, individual growing at higher elevations. D. Habit, individuals growing at lower elevations. E. Capitulum, floral disc detail. F. Capitulum, involucral bracts detail. G. Elongated axis bracts. H. Rosette detail. I. Leaf apex detail. (Photos: M. Trovó).
FIGURE 1 in "Species imperfecte cognita"-enlightening Paepalanthus cordatus (Eriocaulaceae): nomenclatural and taxonomic notes on an endangered species from central Brazil
FIGURE 1. Paepalanthus cordatus (from Trovó et al. 478). A. Habit. B. Habit detail, highlighting the leaf apex. C. Involucral bract, abaxial surface. D. Staminate flower. E. Floral bract, abaxial surface. F. Staminate flower with sepals removed and corolla opened. G. Pistillate flower. H. Sepal of the pistillate flower, abaxial surface. I. Petal of the pistillate flower, abaxial surface. J. Gynoecium. (Illustration: Klei Sousa).
FIGURE 2 in Nomenclature history and typification of Phacelurus speciosus (Poaceae) with a new synonym
FIGURE 2. Rottboellia cochinchinensis (A) Raceme (B) Pair of spikelet (C) Sessile spikelet (D) Stamens and lodicules (E) Pedicelled spikelet.
FIGURE 1 in Nomenclature history and typification of Phacelurus speciosus (Poaceae) with a new synonym
FIGURE 1. Phacelurus speciosus (A) Part of raceme (B) & (D) Pair of spikelet (C) Pedicelled spikelet, (E) Lower glume of sessile spikelet, (F) Lower lemma of sessile spikelet (G) Upper floret (H) Pistil & stamens.
FIGURE 5. Leucoagaricus gongylophorus F.T.F. 192. A. Basidiospores. B. Basidia. Scale bars are 10 in Taxonomic and nomenclatural novelties in Leucoagaricus (Agaricaceae) from Brazil
FIGURE 5. Leucoagaricus gongylophorus F.T.F. 192. A. Basidiospores. B. Basidia. Scale bars are 10 µm. Illustration by C. Heisecke.
FIGURE 4. Leucoagaricus gongylophorus C.H.C. 463 in Taxonomic and nomenclatural novelties in Leucoagaricus (Agaricaceae) from Brazil
FIGURE 4. Leucoagaricus gongylophorus C.H.C. 463 (Epitype). A. Basidiospores. B. Basidia. C. Cheilocystidia. D. Pileus covering. Scale bars are 10 µm for A–C and 20 µm for D. Illustration by C. Heisecke.
FIGURE 1 in Taxonomic and nomenclatural novelties in Leucoagaricus (Agaricaceae) from Brazil
FIGURE 1. Phylogenetic tree based on Maximum Likelihood analysis of ITS sequences showing relationship among La. nzumbae, La. gongylophorus and related species. Bootstrap (BS) (above 70%) and posterior probability (BPP) (above 0.8) support values are shown above the branches (BS/BPP). The branches with BS= 100 % and BPP= 1 are in bold. The sequences generated in this work are in bold. Genebank accession number are given for each terminal. Agaricus sp. (MT605382), and A. rufoaurantiacus were used as the outgroup.
FIGURE 6. Leucoagaricus nzumbae C.H.C.349 in Taxonomic and nomenclatural novelties in Leucoagaricus (Agaricaceae) from Brazil
FIGURE 6. Leucoagaricus nzumbae C.H.C.349 (Holotype). A. Basidiospores. B. Basidia. C. Elements of the pileus covering. Scale bars are 10 µm. Illustration by C. Heisecke.
ScienceDex guides
Understand access before you commit
These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
International Brain Laboratory public data
The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
OpenNeuro
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.